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  Callisto's Atmosphere and Its Space Environment: Prospects for the Particle Environment Package on Board JUICE

Galli, A., Vorburger, A., Carberry Mogan, S. R., Roussos, E., Stenberg Wieser, G., Wurz, P., et al. (2022). Callisto's Atmosphere and Its Space Environment: Prospects for the Particle Environment Package on Board JUICE. Earth and Space Science, 9, e02172. doi:10.1029/2021EA002172.

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Galli, A., Author
Vorburger, A., Author
Carberry Mogan, S. R., Author
Roussos, E.1, Author           
Stenberg Wieser, G., Author
Wurz, P., Author
Föhn, M., Author
Krupp, N.1, Author           
Franz, M.1, Author           
Barabash, S., Author
Futaana, Y., Author
Brandt, P. C., Author
Kollmann, P., Author
Haggerty, D. K., Author
Jones, G. H., Author
Johnson, R. E., Author
Tucker, O. J., Author
Simon, S., Author
Tippens, T., Author
Liuzzo, L., Author
Affiliations:
1Planetary Science Department, Max Planck Institute for Solar System Research, Max Planck Society, ou_1832288              

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Free keywords: Callisto; Jovian satellites; atmosphere; Jupiter magnetosphere
 Abstract: The JUpiter ICy moons Explorer (JUICE) of the European Space Agency will investigate Jupiter and its icy moons Europa, Ganymede, and Callisto, with the aim to better understand the origin and evolution of our Solar System and the emergence of habitable worlds around gas giants. The Particle Environment Package (PEP) on board JUICE is designed to measure neutrals and ions and electrons at thermal, suprathermal, and radiation belt energies (eV to MeV). In the vicinity of Callisto, PEP will characterize the plasma environment, the outer parts of Callisto's atmosphere and ionosphere and their interaction with Jupiter's dynamic magnetosphere. Roughly 20 Callisto flybys with closest approaches between 200 and 5,000 km altitude are planned over the course of the JUICE mission. In this article, we review the state of the art regarding Callisto's ambient environment and magnetospheric interaction with recent modeling efforts for Callisto's atmosphere and ionosphere. Based on this review, we identify science opportunities for the PEP observations to optimize scientific insight gained from the foreseen JUICE flybys. These considerations will inform both science operation planning of PEP and JUICE and they will guide future model development for Callisto's atmosphere, ionosphere, and their interaction with the plasma environment.

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 Dates: 2022
 Publication Status: Issued
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 Identifiers: DOI: 10.1029/2021EA002172
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Title: Earth and Space Science
Source Genre: Journal
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Pages: - Volume / Issue: 9 Sequence Number: - Start / End Page: e02172 Identifier: -